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Discovering cryptic species in the Aspiciliella intermutans complex (Megasporaceae, Ascomycota) – First results using gene concatenation and coalescent-based species tree approaches

机译:在互生Aspiciliella intermutans复合体(Megasporaceae,Ascomycota)中发现隐性物种–使用基因级联和基于聚结的物种树方法的第一个结果

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摘要

Taxonomic identifications in some groups of lichen-forming fungi have been challenge largely due to the scarcity of taxonomically relevant features and limitations of morphological and chemical characters traditionally used to distinguish closely related taxa. Delineating species boundaries in closely related species or species complexes often requires a range of multisource data sets and comprehensive analytical methods. Here we aim to examine species boundaries in a group of saxicolous lichen forming fungi, the Aspiciliella intermutans complex (Megasporaceae), widespread mainly in the Mediterranean. We gathered DNA sequences of the nuclear ribosomal internal transcribed spacer (nuITS), the nuclear large subunit (nuLSU), the mitochondrial small subunit (mtSSU) ribosomal DNA, and the DNA replication licensing factor MCM7 from 80 samples mostly from Iran, Caucasia, Greece and eastern Europe. We used a combination of phylogenetic strategies and a variety of empirical, sequence-based species delimitation approaches to infer species boundaries in this group. The latter included: the automatic barcode gap discovery (ABGD), the multispecies coalescent approach *BEAST and Bayesian Phylogenetics and Phylogeography (BPP) program. Different species delimitation scenarios were compared using Bayes factors species delimitation analysis. Furthermore, morphological, chemical, ecological and geographical features of the sampled specimens were examined. Our study uncovered cryptic species diversity in A. intermutans and showed that morphology-based taxonomy may be unreliable, underestimating species diversity in this group of lichens. We identified a total of six species-level lineages in the A. intermutans complex using inferences from multiple empirical operational criteria. We found little corroboration between morphological and ecological features with our proposed candidate species, while secondary metabolite data do not corroborate tree topology. The present study on the A. intermutans species-complex indicates that the genus Aspiciliella, as currently circumscribed, is more diverse in Eurasia than previously expected.
机译:由于缺乏与生物分类有关的特征以及传统上用来区分密切相关的生物分类的形态和化学特征的局限性,某些类地衣形成真菌的生物分类鉴定受到了挑战。在密切相关的物种或物种复合体中划定物种边界通常需要一系列多源数据集和综合分析方法。在这里,我们的目的是检查主要在地中海地区分布的一组无腐病的地衣形成真菌Aspiciliella intermutans complex(Megasporaceae)的物种边界。我们从80个主要来自伊朗,高加索,希腊的样本中收集了核糖体内部转录间隔区(nuITS),核大亚基(nuLSU),线粒体小亚基(mtSSU)核糖体DNA和DNA复制许可因子MCM7的DNA序列。和东欧。我们结合了系统发育策略和各种基于序列的经验性物种定界方法,以推断该组中的物种边界。后者包括:自动条形码间隙发现(ABGD),多物种合并方法* BEAST和贝叶斯系统发育与系统学(BPP)程序。使用贝叶斯因子物种定界分析比较了不同物种定界情景。此外,还检查了样本的形态,化学,生态和地理特征。我们的研究发现了变形链球菌中的隐性物种多样性,并表明基于形态学的分类法可能不可靠,这低估了这一类地衣的物种多样性。我们使用来自多个经验操作标准的推论,在互生曲霉中识别出总共六个物种级谱系。我们发现我们提议的候选物种在形态特征和生态特征之间几乎没有佐证,而次生代谢产物数据并不能佐证树木的拓扑。目前关于变形链球菌物种复合体的研究表明,目前受到限制的Aspiciliella属在欧亚大陆比以前预期的更加多样化。

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